Rotation effect on jet impingement heat transfer in smooth rectangular channels with heated target walls and radially outward cross flow
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics
Reference28 articles.
1. Heat transfer between a flat plate and jets of air impinging on it;Gardon,1962
2. The role of turbulence in determining the heat transfer characteristics of impinging jets;Gardon;Int. J. Heat Mass Transfer,1965
3. Turbulence dissipation in a free-surface jet of water and its effect on local impingement heat transfer from a heated surface: Part 1—Flow structure;Wolf;ASME J. Heat Transfer,1995
4. Turbulence dissipation in a free-surface jet of water and its effect on local impingement heat transfer from a heated surface: Part 2—Local heat transfer;Wolf;ASME J. Heat Transfer,1995
5. Heat transfer by a square array of round air jets impinging perpendicular to a flat surface including the effect of spent air;Kercher;ASME J. Engng Pwr,1970
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